论文标题

无条件的机械挤压通过反作用逃避测量和非最佳反馈控制

Unconditional mechanical squeezing via back-action evading measurements and non-optimal feedback control

论文作者

Di Giovanni, Antonio, Brunelli, Matteo, Genoni, Marco G.

论文摘要

通过连续监测单个运动的单个正交,可以在零点的不确定性以下实现精度,对机械谐振器的反向撤离(BAE)测量值。发生这种情况时,测量值将谐振器处于量子挤压状态。然而,如此生成的挤压状态是有条件的,而对于大多数应用,对于具有确定性的,即无条件的,挤压状态具有所需属性。在这项工作中,我们采用反馈控制来确定对经过连续BAE测量的光力学系统中机械挤压的操纵。我们详细研究了两种策略,即直接(马尔可夫)和基于州(贝叶斯)的反馈。我们表明,两者都能够实现最佳性能,即,反馈循环添加了消失的噪声。此外,即使反馈仅限于时变机械力(实验友好的情况)和不完美的BAE制度,随后的非最佳反馈仍然可能会得到大量的压缩。特别是,我们表明贝叶斯反馈控制对于多种边带分辨率几乎是最佳的。我们的分析与最先进的光力学设备中的超敏感测量和量子状态工程具有直接相关性。

Backaction-evading (BAE) measurements of a mechanical resonator, by continuously monitoring a single quadrature of motion, can achieve precision below the zero-point uncertainty. When this happens, the measurement leaves the resonator in a quantum squeezed state. The squeezed state so generated is however conditional on the measurement outcomes, while for most applications it is desirable to have a deterministic, i.e., unconditional, squeezed state with the desired properties. In this work we apply feedback control to achieve deterministic manipulation of mechanical squeezing in an optomechanical system subject to a continuous BAE measurement. We study in details two strategies, direct (Markovian) and state-based (Bayesian) feedback. We show that both are capable to achieve optimal performances, i.e., a vanishing noise added by the feedback loop. Moreover, even when the feedback is restricted to be a time-varying mechanical force (experimentally friendly scenario) and an imperfect BAE regime is considered, the ensuing non-optimal feedback may still obtain significant amount of squeezing. In particular, we show that Bayesian feedback control is nearly optimal for a wide range of sideband resolution. Our analysis is of direct relevance for ultra-sensitive measurements and quantum state engineering in state-of-the-art optomechanical devices.

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